Advances in electrocatalysis research rely heavily on building a thorough mechanistic understanding of catalyst active sites under realistic operating conditions. Only recently have techniques emerged that enable sensitive spectroscopic data collection to distinguish catalytically relevant surface sites from the underlying bulk material under applied potential in the presence of an electrolyte layer. Here, we demonstrate that operando high-energy-resolution fluorescence detected X-ray absorption spectroscopy (HERFD-XAS) is a powerful spectroscopic method which offers critical surface chemistry insights in CO2 electroreduction with sub-electronvolt energy resolution using hard X-rays. Combined with the high surface area-to-volume ratio of 5 ...
A systematic time-resolved study can provide key insights on selective carbon dioxide electro-reduct...
Fossil resources are being depleted, while the concentration of CO2 in the atmosphere rises. There c...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...
The electrochemical CO2 reduction reaction (CO2RR) using Cu-based catalysts holds great potential fo...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
Understanding the chemical environment and interparticle dynamics of nanoparticle electrocatalysts u...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
The rational design of high-performance electrocatalysts requires a detailed understanding of dynami...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
The urgency of climate change demands the simultaneous removal of carbon dioxide from the atmosphere...
In this paper we combine two operando methods, Raman spectroscopy and X-ray absorption spectroscopy ...
Copper-based catalysts are established catalytic systems for the electrocatalytic CO2 reduction reac...
The design and synthesis of nanocatalysts with well-defined sizes, compositions, and structures have...
The reduction of carbon dioxide to renewable fuels and feedstocks offers opportunities for large-sca...
A systematic time-resolved study can provide key insights on selective carbon dioxide electro-reduct...
Fossil resources are being depleted, while the concentration of CO2 in the atmosphere rises. There c...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...
The electrochemical CO2 reduction reaction (CO2RR) using Cu-based catalysts holds great potential fo...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
The variation in the morphology and electronic structure of copper during the electroreduction of CO...
Understanding the chemical environment and interparticle dynamics of nanoparticle electrocatalysts u...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
The rational design of high-performance electrocatalysts requires a detailed understanding of dynami...
Understanding the changes that a catalyst may experience on its surface during a reaction is crucial...
The urgency of climate change demands the simultaneous removal of carbon dioxide from the atmosphere...
In this paper we combine two operando methods, Raman spectroscopy and X-ray absorption spectroscopy ...
Copper-based catalysts are established catalytic systems for the electrocatalytic CO2 reduction reac...
The design and synthesis of nanocatalysts with well-defined sizes, compositions, and structures have...
The reduction of carbon dioxide to renewable fuels and feedstocks offers opportunities for large-sca...
A systematic time-resolved study can provide key insights on selective carbon dioxide electro-reduct...
Fossil resources are being depleted, while the concentration of CO2 in the atmosphere rises. There c...
Revealing the active nature of oxide derived copper (OD-Cu) is of key importance to understand its r...